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Prediction of topological Dirac semimetal in Ca-based Zintl layered compounds CaM 2 X 2 (M = Zn or Cd; X = N, P, As, Sb, or Bi).

Authors :
Feng LY
Villaos RAB
Maghirang AB 3rd
Huang ZQ
Hsu CH
Lin H
Chuang FC
Source :
Scientific reports [Sci Rep] 2022 Mar 17; Vol. 12 (1), pp. 4582. Date of Electronic Publication: 2022 Mar 17.
Publication Year :
2022

Abstract

Topological Dirac materials are attracting a lot of attention because they offer exotic physical phenomena. An exhaustive search coupled with first-principles calculations was implemented to investigate 10 Zintl compounds with a chemical formula of CaM <subscript>2</subscript> X <subscript>2</subscript> (M = Zn or Cd, X = N, P, As, Sb, or Bi) under three crystal structures: CaAl <subscript>2</subscript> Si <subscript>2</subscript> -, ThCr <subscript>2</subscript> Si <subscript>2</subscript> -, and BaCu <subscript>2</subscript> S <subscript>2</subscript> -type crystal phases. All of the materials were found to energetically prefer the CaAl <subscript>2</subscript> Si <subscript>2</subscript> -type structure based on total ground state energy calculations. Symmetry-based indicators are used to evaluate their topological properties. Interestingly, we found that CaM <subscript>2</subscript> Bi <subscript>2</subscript> (M = Zn or Cd) are topological crystalline insulators. Further calculations under the hybrid functional approach and analysis using k · p model reveal that they exhibit topological Dirac semimetal (TDSM) states, where the four-fold degenerate Dirac points are located along the high symmetry line in-between Г to A points. These findings are verified through Green's function surface state calculations under HSE06. Finally, phonon spectra calculations revealed that CaCd <subscript>2</subscript> Bi <subscript>2</subscript> is thermodynamically stable. The Zintl phase of AM <subscript>2</subscript> X <subscript>2</subscript> compounds have not been identified in any topological material databases, thus can be a new playground in the search for new topological materials.<br /> (© 2022. The Author(s).)

Details

Language :
English
ISSN :
2045-2322
Volume :
12
Issue :
1
Database :
MEDLINE
Journal :
Scientific reports
Publication Type :
Academic Journal
Accession number :
35301355
Full Text :
https://doi.org/10.1038/s41598-022-08370-2